Inducing and Switching the Handedness of Polyacetylenes with Topologically Chiral [2]Catenane Pendants

Author:

Wang Yu1,Zhang Xin1,Huang Chang‐Bo2,Hu Lianrui1,Wang Xu‐Qing1,Wang Wei1,Yang Hai‐Bo13ORCID

Affiliation:

1. Shanghai Key Laboratory of Green Chemistry and Chemical Processes, State Key Laboratory of Petroleum Molecular and Process Engineering, School of Chemistry and Molecular Engineering East China Normal University Shanghai 200062 China

2. Coatings Applied Research Asia Pacific BASF Advanced Chemicals Co., Ltd. Shanghai 200137 China

3. Shanghai Center of Brain-inspired Intelligent Materials and Devices East China Normal University Shanghai 200241 China

Abstract

AbstractTo explore the chirality induction and switching of topological chirality, poly[2]catenanes composed of helical poly(phenylacetylenes) (PPAs) main chain and topologically chiral [2]catenane pendants are described for the first time. These poly[2]catenanes with optically active [2]catenanes on side chains were synthesized by polymerization of enantiomerically pure topologically chiral [2]catenanes with ethynyl polymerization site and/or point chiral moiety. The chirality information of [2]catenane pendants was successfully transferred to the main chain of polyene backbones, leading to preferred‐handed helical conformations, while the introduction of point chiral units has negligible effect on the overall helices. More interestingly, attributed to unique dynamic feature of the [2]catenane pendants, these polymers revealed dynamic response behaviors to solvents, temperature, and sodium ions, resulting in the fully reversible switching on/off of the chirality induction. This work provides not only new design strategy for novel chiroptical switches with topologically chiral molecules but also novel platforms for the development of smart chiral materials.

Funder

Science and Technology Commission of Shanghai Municipality

Publisher

Wiley

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